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丙酮和乙腈对缺陷五边形钯硒纳米带的吸附效应:一项密度泛函理论研究

Adsorption effects of acetone and acetonitrile on defected penta-PdSe nanoribbons: a DFT study.

作者信息

Tien Nguyen Thanh, Dang Nguyen Hai, Bich Thao Pham Thi, Vo K Dien, Hoat D M, Nguyen Duy Khanh

机构信息

College of Natural Sciences, Can Tho University 3-2 Road Can Tho City 900000 Vietnam.

Division of Applied Physics, Dong Nai Technology University Bien Hoa City Vietnam.

出版信息

RSC Adv. 2024 May 21;14(23):16445-16458. doi: 10.1039/d4ra02368d. eCollection 2024 May 15.

Abstract

Using DFT calculations, the structural and electronic properties of the ZZ7 p-PdSe nanoribbons (ZZ7) with the four kinds of vacancy defects, including ZZ7-V, ZZ7-V, ZZ7-V, and ZZ7-V are studied, in which their stability, diverse geometries, and altered electronic properties are determined through the formation energies, optimal structural parameters, electronic band structures, and DOSs. Specifically, the formation energies of all studied systems show significant negative values around -3.9 eV, evidencing their good thermal stability. The geometries of four defective structures exhibit different diversification, whereas only the ZZ7-V structure possesses the highly enhanced feature, identified as the most effective substrate for the acetone and acetonitrile adsorption. On the electronic behaviors, the ZZ7 band structure displays the nonmagnetic metallic characteristics that become the ferromagnetic half-metallic band structures for the ZZ7-V and ZZ7-V and the ferromagnetic semi-metallic band structures for the ZZ7-V and ZZ7-V. For adsorption of the acetone and acetonitrile on the ZZ7-V structure, the energetic stability, adsorption sites, adsorption distances, charge transfers, and electronic characteristics of the adsorbed systems are determined by the adsorption energies, optimal adsorption sites, adsorption distances, Mulliken populations, and DOSs. The adsorption energies of the acetone- and acetonitrile-adsorbed ZZ7-V systems display significant values at -1.2 eV and -0.86 eV at the preferable sites of 8 and 11, respectively, indicating their great adsorption ability. The adsorption mechanism of the acetone- and acetonitrile-adsorbed systems belongs to the physisorption owing to absence of chemical bonds, in which the bond lengths of the ZZ7-V substrate show a very small deviation. Under the acetone and acetonitrile adsorptions, the ferromagnetic semi-metallic DOSs of the ZZ7-V become the ferromagnetic half-metallic DOSs for the ZZ7-V-acetone-8 and the ferromagnetic semiconducting DOSs for the ZZ7-V-acetonitrile-11. Our systematic results can provide a complete understanding of the acetone- and acetonitrile adsorptions on the potential ZZ7-V structure, which is very useful for nanosensor application.

摘要

通过密度泛函理论(DFT)计算,研究了具有四种空位缺陷的ZZ7 p型PdSe纳米带(ZZ7)的结构和电子性质,包括ZZ7-V、ZZ7-V、ZZ7-V和ZZ7-V。通过形成能、最佳结构参数、电子能带结构和态密度来确定它们的稳定性、多样的几何结构以及改变的电子性质。具体而言,所有研究体系的形成能在-3.9 eV左右呈现出显著的负值,证明了它们良好的热稳定性。四种缺陷结构的几何形状表现出不同的多样性,而只有ZZ7-V结构具有高度增强的特征,被确定为丙酮和乙腈吸附的最有效基底。在电子行为方面,ZZ7能带结构显示出非磁性金属特性,而对于ZZ7-V和ZZ7-V则变为铁磁半金属能带结构,对于ZZ7-V和ZZ7-V则变为铁磁半金属能带结构。对于丙酮和乙腈在ZZ7-V结构上的吸附,通过吸附能、最佳吸附位点、吸附距离、穆利肯布居数和态密度来确定吸附体系的能量稳定性、吸附位点、吸附距离、电荷转移和电子特性。丙酮和乙腈吸附的ZZ7-V体系在8号和11号优选位点的吸附能分别为-1.2 eV和-0.86 eV,显示出它们很强的吸附能力。由于不存在化学键,丙酮和乙腈吸附体系的吸附机制属于物理吸附,其中ZZ7-V基底的键长显示出非常小的偏差。在丙酮和乙腈吸附下,ZZ7-V的铁磁半金属态密度对于ZZ7-V-丙酮-8变为铁磁半金属态密度,对于ZZ7-V-乙腈-11变为铁磁半导体态密度。我们的系统结果可以提供对丙酮和乙腈在潜在的ZZ7-V结构上吸附的完整理解,这对于纳米传感器应用非常有用。

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